Mixing and decoherence in continuous-time quantum walks on cycles

被引:0
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作者
Center for Quantum Device Technology, Department of Physics, Clarkson University, Potsdam, NY 13699, United States [1 ]
不详 [2 ]
不详 [3 ]
机构
来源
Quantum Inf. Comput. | 2006年 / 3卷 / 263-276期
关键词
Continuous time systems - Mixing - Quantum theory;
D O I
10.26421/qic6.3-3
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摘要
We prove analytical results showing that decoherence can be useful for mixing time in a continuous-time quantum walk on finite cycles. This complements the numerical observations by Kendon and Tregenna (Physical Review A 67 (2003), 042315) of a similar phenomenon for discrete-time quantum walks. Our analytical treatment of continuoustime quantum walks includes a continuous monitoring of all vertices that induces the decoherence process. We identify the dynamics of the probability distribution and observe how mixing times undergo the transition from quantum to classical behavior as our decoherence parameter grows from zero to infinity. Our results show that, for small rates of decoherence, the mixing time improves linearly with decoherence, whereas for large rates of decoherence, the mixing time deteriorates linearly towards the classical limit. In the middle region of decoherence rates, our numerical data confirms the existence of a unique optimal rate for which the mixing time is minimized. © Rinton Press.
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